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Very high cycle fatigue characteristics of a chrome-molybdenum steel treated by ultrasonic nanocrystal surface modification technique

机译:超声纳米晶表面改性技术处理铬钼钢的极高循环疲劳特性

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Characterization of very high cycle fatigue (VHCF) performance is of significant issue for ensuring long-term durability and reliability of machinery and structural components due to the growing industrial demands and significant requirements of the advanced systems. In this study, VHCF characteristics of nanocrystallized skins (nanoskin) on JIS SCM435 (AISI 4137) steels were investigated as diree different nanoskins on the surface, which was fabricated by altering the static load of ultrasonic nanocrystal surface modification (UNSM) treatment The fatigue characterization, which shows linearly proportional correlation in the range of 80-120 μm depth of subsurface, was subjected to severe plastic deformation by altering the static loads of UNSM treatment to 40, 70 and 100N, respectively. The fatigue strength increased up to 30% in the regime of VHCF. The improved strength mainly resulted from the generation of nanocrystalline structure, the enhanced surface uniformity, hardness and residual stress.
机译:由于不断增长的工业需求和先进系统的重大要求,非常高的循环疲劳(VHCF)性能的表征对于确保机械和结构部件的长期耐用性和可靠性至关重要。在这项研究中,研究了JIS SCM435(AISI 4137)钢上的纳米晶皮(纳米皮)的VHCF特性,通过改变超声纳米晶表面改性(UNSM)处理的静载荷来制造表面上不同的纳米皮。通过将UNSM处理的静态载荷分别更改为40、70和100N,在地下深度为80-120μm的范围内显示线性比例相关性的碳纳米管经历了严重的塑性变形。在VHCF方案中,疲劳强度提高了30%。强度的提高主要归因于纳米晶体结构的产生,表面均匀性,硬度和残余应力的增强。

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